Room-temperature quantum computing powered by photons. Ultra-fast gate operations, optical interference, and scalable photonic chips enable new possibilities for quantum networking and simulation.
Linear optical components and photon sources build scalable quantum circuits with minimal thermal overhead.
Fast operations enable high-throughput workloads and quantum communication use cases.
On-chip waveguides, beam splitters, and phase shifters provide stable and scalable quantum computation.
Modular photonic tiles enable rapid expansion in qubit count and circuit depth.
Native photonic interfaces enable secure quantum communication and entanglement distribution.
Fast linear optics makes photonic systems ideal for boson sampling and quantum photonic simulations.
Ultra-fast gates support quantum-enhanced machine learning and kernel methods.
Use photonic QKD for identity and transaction security in distributed systems.
Photonics provides natural interfaces for multi-node quantum clusters.
Test new protocols for photonic error correction and fault tolerance.
Access a room-temperature quantum platform optimized for speed, networking, and scalable photonic architectures.